Centre for Molecular Medicine and Therapeutics, BC Children's Research Institute, University of British Columbia, Vancouver, Canada.
Departments of Biochemistry, Molecular Biology and Medical Genetics, Cumming School of Medicine, University of Calgary, Calgary, AB, Canada.
Mol Genet Genomic Med. 2019 Oct;7(10):e00961. doi: 10.1002/mgg3.961. Epub 2019 Sep 1.
Profiling the entire genome at base pair resolution in a single test offers novel insights into disease by means of dissection of genetic contributors to phenotypic features.
We performed genome sequencing for a patient who presented with atypical hereditary sensory and autonomic neuropathy, severe epileptic encephalopathy, global developmental delay, and growth hormone deficiency.
Assessment of the variants detected by mapped sequencing reads followed by Sanger confirmation revealed that the proband is a compound heterozygote for rare variants within RETREG1 (FAM134B), a gene associated with a recessive form of hereditary sensory and autonomic neuropathy, but not with epileptic encephalopathy or global developmental delay. Further analysis of the data also revealed a heterozygous missense variant in DNM1L, a gene previously implicated in an autosomal dominant encephalopathy, epilepsy, and global developmental delay and confirmed by Sanger sequencing to be a de novo variant not present in parental genomes.
Our findings emphasize the importance of genome-wide sequencing in patients with a well-characterized genetic disease with atypical presentation. This approach reduces the potential for misdiagnoses.
通过对表型特征的遗传贡献进行剖析,以碱基对分辨率在单次检测中对整个基因组进行分析,为疾病提供了新颖的见解。
我们对一名表现出非典型遗传性感觉和自主神经病、严重癫痫性脑病、全面发育迟缓以及生长激素缺乏的患者进行了基因组测序。
对映射测序reads 检测到的变体进行评估,然后进行 Sanger 确认,结果显示先证者是 RETREG1(FAM134B)内罕见变异的复合杂合子,该基因与隐性遗传性感觉和自主神经病有关,但与癫痫性脑病或全面发育迟缓无关。对数据的进一步分析还显示,DNM1L 中存在杂合错义变异,该基因先前与常染色体显性脑病、癫痫和全面发育迟缓有关,通过 Sanger 测序证实该变异是新出现的变异,不在父母基因组中。
我们的发现强调了在具有非典型表现的明确遗传疾病患者中进行全基因组测序的重要性。这种方法降低了误诊的可能性。